期刊文献+

含能复合催化剂对微烟推进剂燃烧性能的影响 被引量:11

Effect of Novel Energetic Composite Catalysts on Combustion Properties of Minimum Smoke Propellant
在线阅读 下载PDF
导出
摘要 为研究含能催化剂对微烟推进剂燃烧性能的影响,制备了多种含复合含能催化剂的RDX-CM DB推进剂,利用靶线法测定了推进剂在不同压力下的燃速,并对测试结果进行了线性回归。结果表明,在研究的含能催化剂中,2HDNPPb/2HDNPCu和4HDNPPb/2HDNPCu复合催化剂对推进剂有更好的催化效率和降低压力指数的能力。将含能复合催化剂与单一含能催化剂的催化作用进行比较得出,当催化剂加入量一定时,羟基吡啶铅盐、铜盐复合使用比单一的铅盐或铜盐有更好的催化效果。 In order to investigate the effect of novel energetic catalysts on the combustion properties of minimum smoke propellant, the -RDXCMDB propellant samples containing various energetic composite catalysts were prepared through a solventless extrusion technique. The propellant burning rates at different pressures were measured by a strand burner and the experimental data were treated and analyzed with a linear regression method. The results show that in the energetic catalysts studied, lead salt of 2-hydroxy-3,5-dinitropyridine (2HDNPPb)/ copper salt of 2-hydroxy-3, 5-dinitropyridine (2HDNPCu) and lead salt of 4 hydroxy 3, 5 dinitropyridine (4HDNPPb)/2HDNPCu composite catalysts possess better catalytic effect and ability to reduce pressure exponent for the propellant. In comparison with single energetic lead salt or copper salt, the mixtures of lead and copper salts of hydroxypyridines have higher catalytic efficiency when the total content of catalyst added is constant.
出处 《火炸药学报》 EI CAS CSCD 2007年第2期1-4,16,共5页 Chinese Journal of Explosives & Propellants
基金 国家自然科学基金(No.20573098) 火炸药燃烧重点实验室基金项目(51455030205ZS3505)
关键词 物理化学 含能催化剂 燃烧性能 微烟推进剂 physical chemistry energetic catalyst combustion property minimum smoke propellant
  • 相关文献

参考文献9

二级参考文献41

  • 1李上文,孟燮铨,张蕊娥,白宜生.硝胺无烟改性双基推进剂燃烧性能调节及控制规律的初探[J].推进技术,1995,16(3):63-69. 被引量:20
  • 2[8]Agrawal, R. K. J. Therm. Anal. 1987, 32(1), 149.
  • 3[10]Hu, R.-Z.; Yang, Z.-Q.; Ling, Y.-J. Thermochim. Acta 1988, 123, 135.
  • 4[11]Zhang, T.-L.; Hu, R.-Z.; Xie, Y.; Li, F.-P. Thermochim. Acta 1994, 244, 171.
  • 5[13]Zhao, F.-Q.; Li, S.-W.; Shan, W.-G.; Lu, D.-L.; Li, S.-F. In Solid Propellant Chemistry, Combustion, and Motor Interior Ballistics, Ed.: Vigor, Y., AIAA, Reston, USA, 2000, pp. 465~475.
  • 6[2](a) US 3547935 (cl 260-297; co7d), 1967 [Chem. Abstr. 1971, 74, 141543].(b) Signor, A.; Scoffone, E.; Biondi, L.; Bezzi, S. Gazz Chim. Ital. 1963, 93, 65.(c) Glowiuk, B. Zeszyty. Nauk. Politech. Wroclaw. Chem. 1961, 7, 49.
  • 7[3]Kissinger, H. E. Anal. Chem. 1957, 29, 1702.
  • 8[4]Ozawa, T. Bull. Chem. Soc. Jpn. 1965, 38, 1881.
  • 9[5]Coats, A. W.; Redfern, J. P. Nature 1964, 201(4914), 68.
  • 10[6]Mac Callum, J. R.; Tanner, J. Eur. Polymer J. 1968, 4, 333.

共引文献82

同被引文献176

引证文献11

二级引证文献64

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部